Karas Vasili, Cole Brian J, Wang Vincent M
Med Sport Sci. 2012;57:18-26. doi: 10.1159/000328871. Epub 2011 Oct 4.
The biomechanical properties of, and mechanical environment surrounding, the rotator cuff continue to be a research area of great interest as injury and failure of these tendons are among the most common of shoulder pathologies, with incidence increasing in older populations. Recent literature has refined our knowledge of the anatomy, the role of the various tendons in movement and shoulder stability, and structural and material properties of the human rotator cuff. Furthermore, animal models have characterized the effects of mechanical loading on rotator cuff properties, the biomechanical interactions among cuff tendons in uninjured and deficient rotator cuffs have been described, and more recent imaging studies have provided novel insights into the function of the rotator cuff in vivo. Research to advance our understanding of the biomechanical factors contributing to rotator cuff disease is needed, as the etiology, prognostic indicators, and reasons for treatment failure are poorly understood. We summarize published biomechanical literature on the rotator cuff to provide a current perspective on potential mechanisms involved in cuff pathology.
肩袖的生物力学特性及其周围的力学环境仍是一个备受关注的研究领域,因为这些肌腱的损伤和断裂是最常见的肩部病变之一,且在老年人群中的发病率呈上升趋势。近期的文献完善了我们对肩袖解剖结构、各肌腱在运动和肩部稳定性中的作用以及人体肩袖的结构和材料特性的认识。此外,动物模型已明确了机械负荷对肩袖特性的影响,描述了未受伤和有缺陷的肩袖中各肌腱之间的生物力学相互作用,并且最近的影像学研究为肩袖在体内的功能提供了新的见解。由于对肩袖疾病的病因、预后指标及治疗失败原因了解甚少,因此需要开展研究以加深我们对导致肩袖疾病的生物力学因素的理解。我们总结已发表的关于肩袖的生物力学文献,以提供有关肩袖病变潜在机制的当前观点。